Highly active bidirectional electron transfer by a self‐assembled electroactive reduced‐graphene‐oxide‐hybridized biofilm

YC Yong, YY Yu, X Zhang… - Angewandte Chemie …, 2014 - Wiley Online Library
Low extracellular electron transfer performance is often a bottleneck in developing high‐
performance bioelectrochemical systems. Herein, we show that the self‐assembly of …

Highly active bidirectional electron transfer by a self-assembled electroactive reduced-graphene-oxide-hybridized biofilm

YC Yong, YY Yu, X Zhang… - … (International ed. in …, 2014 - pubmed.ncbi.nlm.nih.gov
Low extracellular electron transfer performance is often a bottleneck in developing high-
performance bioelectrochemical systems. Herein, we show that the self-assembly of …

Highly Active Bidirectional Electron Transfer by a Self‐Assembled Electroactive Reduced‐Graphene‐Oxide‐Hybridized Biofilm

YC Yong, YY Yu, X Zhang, H Song - Angewandte Chemie, 2014 - Wiley Online Library
Low extracellular electron transfer performance is often a bottleneck in developing high‐
performance bioelectrochemical systems. Herein, we show that the self‐assembly of …

Highly active bidirectional electron transfer by a self-assembled electroactive reduced-graphene-oxide-hybridized biofilm

YC Yong, YY Yu, X Zhang, H Song - 2014 - dr.ntu.edu.sg
Low extracellular electron transfer performance is often a bottleneck in developing high-
performance bioelectrochemical systems. Herein, we show that the self-assembly of …

Highly Active Bidirectional Electron Transfer by a Self‐Assembled Electroactive Reduced‐Graphene‐Oxide‐Hybridized Biofilm

YC Yong, YY Yu, X Zhang, H Song - Angewandte Chemie, 2014 - infona.pl
Low extracellular electron transfer performance is often a bottleneck in developing high‐
performance bioelectrochemical systems. Herein, we show that the self‐assembly of …

[引用][C] Highly Active Bidirectional Electron Transfer by a Self-Assembled Electroactive Reduced-Graphene-Oxide-Hybridized Biofilm

YC Yong, YY Yu, X Zhang, H Song - Angewandte Chemie, 2014 - ui.adsabs.harvard.edu
Highly Active Bidirectional Electron Transfer by a Self-Assembled Electroactive Reduced-Graphene-Oxide-Hybridized
Biofilm - NASA/ADS Now on home page ads icon ads Enable full ADS view NASA/ADS …

Highly active bidirectional electron transfer by a self-assembled electroactive reduced-graphene-oxide-hybridized biofilm.

YC Yong, YY Yu, X Zhang, H Song - … Chemie (International ed. in …, 2014 - europepmc.org
Low extracellular electron transfer performance is often a bottleneck in developing high-
performance bioelectrochemical systems. Herein, we show that the self-assembly of …

Highly Active Bidirectional Electron Transfer by a Self-Assembled Electroactive Reduced-Graphene-Oxide-Hybridized Biofilm.

YC Yong, YY Yu, X Zhang… - Angewandte Chemie …, 2014 - search.ebscohost.com
Low extracellular electron transfer performance is often a bottleneck in developing high-
performance bioelectrochemical systems. Herein, we show that the self-assembly of …

Highly Active Bidirectional Electron Transfer by a Self-Assembled Electroactive Reduced-Graphene-Oxide-Hybridized Biofilm.

YC Yong, YY Yu, X Zhang, H Song - Angewandte Chemie, 2014 - search.ebscohost.com
Low extracellular electron transfer performance is often a bottleneck in developing high-
performance bioelectrochemical systems. Herein, we show that the self-assembly of …

Highly Active Bidirectional Electron Transfer by a Self‐Assembled Electroactive Reduced‐Graphene‐Oxide‐Hybridized Biofilm

YC Yong, YY Yu, X Zhang, H Song - Angewandte Chemie International …, 2014 - infona.pl
Low extracellular electron transfer performance is often a bottleneck in developing high‐
performance bioelectrochemical systems. Herein, we show that the self‐assembly of …